Files
msd-core/docs/TESTING-SUITES.md
Tom Boucher 5ca646f015 feat(#443): unified cross-provider effort controls + fast-mode-aware routing (#463)
* test(#443): RED unified effort + fast_mode + resolve-execution

All 68 tests failing as expected — no implementation yet.
Covers: effort cascade (tier defaults, overrides, invalid fallthrough),
fast_mode cascade (boolean-only, tier defaults), resolveEffortForTier
escalation, renderEffortForRuntime clamping, resolve-execution CLI,
config schema new keys, QA hostile-input matrix.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* feat(#443): unified cross-provider effort + fast_mode knobs and resolve-execution query

Adds config-driven effort control (universal ladder: minimal<low<medium<high<xhigh<max)
and fast_mode propagation knobs, with per-runtime rendering that clamps the unique
tail values (max=Anthropic-only clamps to xhigh on Codex; minimal=Codex-only clamps
to low on Claude).

Key changes:
- config-schema.manifest.json: add effort.default, fast_mode.enabled as validKeys;
  add 4 dynamicKeyPatterns for effort.routing_tier_defaults, effort.agent_overrides,
  fast_mode.routing_tier_defaults, fast_mode.agent_overrides; fix stale _comment
- config-defaults.manifest.json: add effort and fast_mode blocks with tier defaults
- model-catalog.cjs: add EFFORT_RENDERING map, renderEffortForRuntime(), RUNTIMES_WITH_FAST_MODE
- model-profiles.cjs: re-export new catalog exports
- core.cjs: add resolveEffortInternal, resolveFastModeInternal, resolveEffortForTier,
  VALID_EFFORTS, EFFORT_SET, nextEffort; pass effort/fast_mode through loadConfig
- commands.cjs: replace reasoning_effort in cmdResolveModel with unified effort;
  add cmdResolveExecution (superset command with effort_rendered, effort_param,
  effort_propagation, fast_mode, fast_mode_supported)
- gsd-tools.cjs: add resolve-execution case with --effort/--fast-mode/--attempt flags
- tests/feat-443: 69 tests covering cascade, rendering, escalation, CLI, schema, QA matrix
- tests/commands.test.cjs: convert 3 reasoning_effort assertions to unified effort
- docs/CONFIGURATION.md: document effort + fast_mode + resolve-execution sections
- settings-advanced.md: list new effort/fast_mode keys in confirmation table

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* refactor(#443): remove dead catalog effort lane; unify codex effort through renderEffortForRuntime

- Remove resolveReasoningEffortInternal (catalog-driven effort function) from
  core.cjs and its export; remove from commands.cjs destructure import
- Convert tests/issue-2517-runtime-aware-profiles.test.cjs: all 11 effort
  assertions now use resolveEffortInternal + renderEffortForRuntime; Claude
  effort is first-class (output_config.effort); unknown runtimes assert param===null
- Convert tests/feat-3023-model-phase-types.test.cjs: replace the entire
  resolveReasoningEffortInternal describe with unified effort assertions;
  effort derives from AGENT_DEFAULT_TIERS routing tier, not phase-type tier

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* docs(#443): ADR for unified cross-provider effort + fast-mode routing

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>

* test(#443): architecture-level QA invariants + test-strategy doc

Add 48-test integration suite (feat-443-effort-fast-mode.integration.test.cjs)
covering 8 architectural invariants: cross-provider validity (never emit a value
the real API would 400 on), param/channel contract stability, resolve-execution
JSON contract (all 8 keys + correct types), totality across the full 33-agent
registry, fast-mode honesty (claude always fast_mode_supported=false), precedence
first-valid-wins matrix for both effort and fast_mode cascades, dynamic-routing
composition (effort escalation independent of model tier), and config-set round-trip
for all new effort/* and fast_mode/* key namespaces. Append test-strategy section
with invariant rationale and E2E gap documentation to docs/TESTING-SUITES.md.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* test(#443): add failing install-wiring tests for effort per-runtime injection (RED)

TDD RED: 10 failing tests covering:
- Claude .md gets effort: injected per tier (planner=xhigh, mapper=low, executor=high)
- Gemini .md does NOT get effort: (already passing — Gemini-safe)
- Codex .toml gets model_reasoning_effort via unified resolver
- Config-driven: effort.agent_overrides drives both Claude .md and Codex .toml
- Source purity: agents/*.md have no effort: key (already passing)

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* feat(#443): wire effort per-runtime at install (Claude .md frontmatter + Codex .toml unified)

- Import AGENT_DEFAULT_TIERS and renderEffortForRuntime from model-catalog.cjs
- Add readGsdEffectiveEffortConfig(targetDir): reads merged effort config from
  .planning/config.json (per-project wins) + ~/.gsd/defaults.json (global fallback),
  same probe pattern as readGsdRuntimeProfileResolver
- Add resolveInstallTimeEffort(effortCfg, agentName): pure function matching
  resolveEffortInternal() precedence (agent_overrides > routing_tier_defaults > default > 'high')
  without loadConfig side-effects (no sub-repo detection, no migration writes)
- Claude agent copy loop: inject `effort: <value>` into frontmatter ONLY for
  runtime === 'claude'; all other .md runtimes (Gemini, Qwen, Hermes, etc.) stay
  effort-free (Gemini-safe source contract preserved in agents/*.md)
- generateCodexAgentToml: add effortCfg param; emit model_reasoning_effort from
  unified resolver (replaces old catalog entry.reasoning_effort); Codex clamps
  max → xhigh via renderEffortForRuntime('codex', ...)
- installCodexConfig: pass readGsdEffectiveEffortConfig(targetDir) to
  generateCodexAgentToml so per-project config wins for Codex .toml too
- Update failing tests to GREEN: 12/12 pass; all 17 install tests pass;
  2847/2848 unit tests pass (1 pre-existing failure: policy-shell-pinning)

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* refactor(#443): source install effort defaults from manifest (kill drift) + guard test

Replace hardcoded _GSD_EFFORT_MANIFEST_TIER_DEFAULTS and the 'high' fallback in
resolveInstallTimeEffort with values read from config-defaults.manifest.json at
module init, using the same __dirname-relative path install.js already uses for
all shared manifests. Add feat-443-effort-defaults-drift.test.cjs to assert
equality between install.js's runtime constants and the manifest on every CI run.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* fix(#443): reconcile Codex TOML tests with unified effort design

The #443 unified effort resolver makes generateCodexAgentToml always emit
model_reasoning_effort (driven by resolveInstallTimeEffort, not model_profile_overrides).
The test 'generated TOML omits reasoning_effort when runtime has none' had an
obsolete premise — model_profile_overrides.reasoning_effort:'' no longer suppresses
unified effort. Convert it to assert the new invariant: Codex TOML always carries a
valid model_reasoning_effort from the agent's routing tier (xhigh for gsd-planner,
a heavy-tier agent), while model_profile_overrides model override is still respected.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* fix(#443): make install.js effort resolution lazy (no load-time side effects breaking launcher-parity)

Replace module-load-time IIFE + hard throw (config-defaults.manifest.json read)
and top-level require of model-catalog.cjs with a lazy _getGsdEffortCatalog()
getter that initialises on first call from resolveInstallTimeEffort /
generateCodexAgentToml / Claude .md effort injection.  Requiring install.js in
unrelated test contexts (e.g. runtime-launcher-parity) no longer triggers
manifest IO or throws, eliminating the load-time side effect that changed
subprocess exit codes / stderr on the bench.

Drift-guard exports (_GSD_EFFORT_MANIFEST_TIER_DEFAULTS / _GSD_EFFORT_MANIFEST_DEFAULT)
preserved as lazy getter properties on module.exports so feat-443-effort-defaults-drift
still validates them without forcing eager load.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* fix(#443): isolate install-wiring test HOME to stop \$HOME/.claude pollution breaking launcher-parity

runGlobalInstall() now redirects HOME to a per-call isolated tmpdir in addition
to the existing runtime-specific env-var redirects (CLAUDE_CONFIG_DIR,
GEMINI_CONFIG_DIR, CODEX_HOME). This ensures install.js code that uses
os.homedir() directly — including the ~/.cache/gsd update-check deletion,
~/.gsd/defaults.json reads, and any HOME-relative npm subprocess writes —
never touches the real \$HOME during the test.

Without the HOME isolation the install test (which is new to this branch and
is now picked up by Docker's raw \`tests/*.test.cjs\` glob) could write or
delete files under the real \$HOME, causing runtime-launcher-parity test (D)
to fail: (D) asserts a loud non-zero exit when \$RUNTIME_DIR/gsd-tools.cjs is
absent and gsd-tools is not on PATH, but the launcher's \$HOME/.claude fallback
arm succeeds if \$HOME/.claude/get-shit-done/bin/gsd-tools.cjs exists.

Also sets GSD_SKIP_STALE_SDK_CHECK=1 to suppress the \`npm ls -g\` subprocess
that the global installer spawns — irrelevant to effort-wiring assertions,
slow, and potentially writes to ~/.npm cache.

All 12 feat-443 install-wiring assertions preserved. Drift-guard 5/5. Unit
suite 2848/2850 (pre-existing policy-shell-pinning.test.cjs failure on next).

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* chore(#443): add changeset fragment for effort + fast-mode routing

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>

* fix(#443): set GSD_TEST_MODE before requiring install.js in drift-guard test to prevent HOME leak

Without GSD_TEST_MODE=1, require('bin/install.js') runs the module's main
install block (guarded by !GSD_TEST_MODE), performing a real global Claude
install into $HOME/.claude/. On CI ubuntu where node is on standard PATH,
the launcher's $HOME/.claude fallback arm then finds gsd-tools.cjs, causing
runtime-launcher-parity test (D) to exit zero when it must exit non-zero.

Root cause: feat-443-effort-defaults-drift.test.cjs (unit suite) runs
alphabetically before runtime-launcher-parity.test.cjs in the same node
--test invocation. Each runs in a separate worker process but shares the
same HOME. The drift test's install leaks gsd-tools.cjs into that HOME,
then the launcher test's bash subprocess finds it via the $HOME/.claude arm.

Fix: add process.env.GSD_TEST_MODE = '1' at the top of the drift-guard
test, before the require(installPath) call. This matches the pattern used
by feat-443-effort-fast-mode.test.cjs and feat-443-effort-install-wiring
.install.test.cjs.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* fix(#443): deterministic resolve-execution arg parsing + validate install-time effort (Codex adversarial findings)

Finding 1: resolve-execution --effort low gsd-planner misrouted 'low' as the agent.
Replace find(non-dash) with a proper flag-consuming loop that collects a single
positional; validate missing/extra positionals and malformed --attempt values.

Finding 2: resolveInstallTimeEffort returned unvalidated effort strings (e.g. "ultra")
verbatim. Each precedence layer now checks GSD_EFFORT_SET (imported once from
core.cjs) before accepting a value, mirroring resolveEffortInternal exactly.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

* fix(#443): newline-agnostic effort frontmatter injection (Windows CRLF) + CRLF-safe assertions

Extracts injectEffortFrontmatter(content, effortValue) pure helper that detects
EOL (LF vs CRLF) from the opening '---' line and inserts 'effort: <value>'
before the closing '---' delimiter using the same EOL as the surrounding
frontmatter. Regex now uses /^---\r?\n([\s\S]*?)^---\r?$/m instead of the
LF-only /^(---\n[\s\S]*?)(---)(\n|$)/ that silently skipped CRLF files on
Windows (git core.autocrlf=true checkout).

Also adds 7 unit tests covering LF, CRLF, idempotency, no-frontmatter, and
complex frontmatter cases. Exports injectEffortFrontmatter from module.exports.

Fixes 6 CI failures in tests/feat-443-effort-install-wiring.install.test.cjs
on windows-latest runners (lines 138, 145, 152, 261, 345, 356).

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>

---------

Co-authored-by: CI Rebase Check <ci@gsd-redux>
Co-authored-by: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-05-29 10:32:58 -04:00

11 KiB
Raw Blame History

Testing Suites

This project's tests/ directory uses filename suffix markers to group tests into named suites. The harness scripts/run-tests.cjs filters by suite when given --suite <name>. Without a flag it runs every *.test.cjs file (the historical default — unchanged).

Tracked by issue #3597.

Suites

Suite Filename pattern What goes here
unit *.test.cjs (no other marker) Default fast lane. Pure logic, no network, no external processes beyond gsd-tools. Most tests live here.
integration *.integration.test.cjs Cross-module flows: full installer end-to-end, multi-tool orchestration, anything that crosses two or more bin entry points.
install *.install.test.cjs Tests that perform a real install/uninstall against a sandbox project. Slower; PR CI skips these on PRs and runs them on main push only.
security *.security.test.cjs Adversarial input, prompt-injection guards, fixture-driven hostile-payload sweeps.
slow *.slow.test.cjs Anything that routinely takes >5s wall-clock or holds significant memory.
all (any) Explicit alias for "no filter". Equivalent to running with no --suite flag.

How to place a new test

  1. Pick the most specific bucket above.
  2. Name the file with the matching suffix: tests/<feature>.<suite>.test.cjs.
  3. If unsure, leave the suffix off — the file lands in unit, the default fast lane.

Examples:

  • tests/agent-frontmatter.test.cjs — unit
  • tests/prompt-injection-guards.security.test.cjs — security
  • tests/installer-end-to-end.install.test.cjs — install
  • tests/sdk-mutation-stress.slow.test.cjs — slow

The suite-suffix convention was chosen over a directory layout (tests/security/) so the 545+ existing test files don't need to move. Existing files all classify as unit until someone explicitly retags them.

Running suites locally

npm test                    # everything (backcompat — same as before)
npm run test:unit           # only unit
npm run test:integration    # only integration
npm run test:install        # only install
npm run test:security       # only security
npm run test:slow           # only slow

npm run test:coverage       # backcompat — coverage over EVERY test
npm run test:coverage:unit  # fast coverage signal — only unit suite
npm run test:coverage:all   # alias for test:coverage

Direct harness invocation also works:

node scripts/run-tests.cjs --suite security
node scripts/run-tests.cjs --suite=security
node scripts/run-tests.cjs --files "tests/command-contract.test.cjs tests/core.test.cjs"
node scripts/run-tests.cjs --files-from .ci-selected-tests.txt

Unknown suites exit non-zero with the list of valid suites. Empty suites (e.g. --suite security before any security-tagged file exists) exit 0 with a no tests in suite "..." notice on stderr so CI lanes don't go red while a suite is being populated.

CI matrix

The Tests workflow runs every PR through a scoped gate generated by scripts/ci-test-scope.cjs.

Lane Node 22 Node 24
ubuntu-latest scoped tests unit + integration + security
windows-latest — scoped Windows/path/shell tests
macos-latest full parity when required full parity when required
  • Node 22 is the engines.node floor (>=22.0.0) — must stay green.
  • Node 24 is the default development lane.
  • Scoped tests are selected from the changed paths, plus a small CLI/package smoke set. They are for confidence on the affected surface, not for counting tests.

The default PR gate runs the broad unit, integration, and security suites once on Ubuntu / Node 24, scoped smoke on Ubuntu / Node 22, scoped Windows/path/shell tests on Windows / Node 24, and unit coverage once on Ubuntu / Node 24. PRs touching workflow, package, test-runner, install, release, or Windows-sensitive surfaces also run the full parity matrix on macOS and the older Windows runtime, plus install and slow on the primary Ubuntu lane. Coverage stays single-lane because multiplying coverage across OS/runtime lanes adds cost without improving the threshold signal.

To inspect the scope locally:

npm run ci:test-scope -- --files "commands/gsd/plan-phase.md"
node scripts/ci-test-scope.cjs --base origin/next --head HEAD

Best practices for forward-compat (Node 24/26)

  • Use process.execPath when spawning Node in tests so each matrix lane exercises the lane's Node version.
  • Avoid stack-trace or error-message prose assertions. Assert err.code, structured JSON fields, or enums — Node minor releases routinely tweak error wording.
  • Prefer node:test, node:assert/strict, and node:test mocks. No external test frameworks.
  • Coverage uses c8 and propagates NODE_V8_COVERAGE through the harness's child process.

Test strategy: #443 effort + fast_mode engine

Feature: unified cross-provider effort and fast_mode knobs (issue #443). Test files: tests/feat-443-effort-fast-mode.test.cjs (unit), tests/feat-443-effort-fast-mode.integration.test.cjs (integration).

Testing pyramid

Layer File What it covers
Unit feat-443-effort-fast-mode.test.cjs Pure logic: cascade rules, clamping, escalation math, malformed config handling, schema key validation. No CLI subprocess.
Integration feat-443-effort-fast-mode.integration.test.cjs Architecture-level invariants: cross-provider validity, totality across the 33-agent registry, CLI JSON contract, config round-trip, fast-mode honesty. Real subprocesses via runGsdTools.
E2E (pending) (not yet wired) Propagation layer: effort frontmatter / CLAUDE_CODE_EFFORT_LEVEL env actually reaching a spawned Claude Code subagent. See "Gaps" below.

Architectural invariants

Each invariant exists to prevent a specific class of production failure.

(a) Cross-provider validity

What: renderEffortForRuntime(runtime, universalEffort).value must always be a member of the runtime's real provider enum. Ground-truth enums are defined as local constants in the test — not sourced from the implementation.

PROVIDER_EFFORT_ENUMS = {
  claude: Set { 'low', 'medium', 'high', 'xhigh', 'max' }   // Anthropic output_config.effort
  codex:  Set { 'minimal', 'low', 'medium', 'high', 'xhigh' } // OpenAI model_reasoning_effort
}

Why: Passing a value outside these sets results in a 400 from the real API. The clamping logic (max -> xhigh for codex; minimal -> low for claude) must hold for every cell of the VALID_EFFORTS × runtimes matrix.

(b) Param/channel contract

What: Each runtime exposes a stable param string (the native API field name) and channel (how the value is propagated). Unknown runtimes return param: null, channel: null and pass the effort value through unchanged.

Why: Callers read .param to construct the dispatch payload. A regression here would silently drop effort from subagent invocations.

(c) Resolve-execution JSON contract

What: The gsd-tools resolve-execution <agent> command emits a JSON object with all eight keys present and typed correctly: model (string), profile (string), effort (VALID_EFFORTS member), effort_rendered (string), effort_param (string|null), effort_propagation (string|null), fast_mode (boolean), fast_mode_supported (boolean).

Why: Orchestrators and workflow dispatchers parse this JSON. A missing or mistyped field silently breaks downstream consumers.

(d) Totality across the real registry

What: For every agent in the 33-agent registry, resolveEffortInternal returns a VALID_EFFORTS member (never undefined/null), resolveFastModeInternal returns a strict boolean, and renderEffortForRuntime('claude', effort) stays within the claude provider enum.

Why: A catalog addition that introduces a missing routingTier mapping would otherwise produce undefined and propagate silently.

(e) Fast-mode honesty invariant

What: When the runtime is claude, fast_mode_supported in resolve-execution output is always false, regardless of the fast_mode config. RUNTIMES_WITH_FAST_MODE contains only 'api'.

Why: Claude Code's /fast toggle is session-level only. Emitting fast_mode: true as frontmatter on a Claude subagent is a silent no-op. Advertising fast_mode_supported: true for claude would cause orchestrators to believe the knob was wired when it is not.

(f) Precedence first-valid-wins

What: Both effort and fast_mode use a layered cascade. The test table covers all four effort layers (invocation override → agent_overrides → routing_tier_defaults → default) and all five fast_mode layers, including the case where an invalid value at a higher layer correctly falls through.

Why: Silent precedence bugs (e.g., a numeric value in agent_overrides not being rejected) would override intentional user config.

(g) Dynamic-routing composition

What: resolveEffortForTier escalates effort by attempt number independently of the model tier mapping. The test verifies the effort ladder (low -> medium -> high -> xhigh -> max), the max clamp, the max_escalations cap, and that escalate_on_failure: false suppresses escalation entirely.

Why: Effort escalation and model escalation share configuration (dynamic_routing) but must operate independently; coupling them would cause over-escalation or under-escalation.

(h) Config-tooling round-trip

What: gsd-tools config-set accepts all new key namespaces (effort.default, effort.routing_tier_defaults.<tier>, effort.agent_overrides.<agent>, fast_mode.enabled, fast_mode.routing_tier_defaults.<tier>, fast_mode.agent_overrides.<agent>) without an "Unknown config key" error, and values set via config-set are reflected in resolve-execution output.

Why: The schema validation gate (VALID_CONFIG_KEYS + DYNAMIC_KEY_PATTERNS) is separate from the resolver logic. A key missing from the schema would produce a silent write failure and appear as a bug only at runtime.

Coverage targets

Suite Target
Unit Every cascade rule, every fallthrough, every clamp. All function branches in resolveEffortInternal, resolveFastModeInternal, resolveEffortForTier, renderEffortForRuntime.
Integration All 8 architectural invariants. All 33 registered agents. All 6 provider × effort combinations for the valid-enum check. Full config-set key namespace.

Gaps / not yet covered

E2E orchestrator-spawn-propagation layer (pending follow-up wiring): The integration tests verify that GSD resolves and renders effort values correctly. They do NOT verify that the rendered values actually reach a spawned Claude Code or Codex subagent at runtime. Specifically uncovered:

  • CLAUDE_CODE_EFFORT_LEVEL env var being set and read by a spawned claude subprocess
  • output_config.effort frontmatter key surviving the AGENTS.md template substitution
  • model_reasoning_effort field surviving serialization into a Codex API request body
  • Fast-mode speed: "fast" field reaching an api-runtime request when fast_mode_supported: true

These require spawning real subagents (or stubs thereof) and asserting on the process environment / request payload — a scope that belongs in a future E2E suite under *.slow.test.cjs or dedicated fixture-driven integration work.